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Calculating energy, wavelength and frequency C, frequency and wavelength Wave speed, frequency and wavelength have a mathematical relationship. Using c = λ x ƒ, frequency or _____________________ can be found. Example: what is the wavelength of a wave of light if it has a frequency of 3.2 x 10 14 hertz? Wave speed, frequency and wavelength practice Using v = λ x ƒ or, find the frequency of a 4.00 x 10-11 m wavelength of the violet light. find the wavelength of a sound wave with a frequency of 440Hz. (Sound travels at ≈ 330 m/s). Light Particles and Planck’s constant Particles of Light Planck’s Constant Scientists in the early 20th century showed that Planck ’s constant is a physical constant electromagnetic radiation was composed of reflecting the sizes of energy __________ particles we call _________. (photons) in quantum mechanics. __________________ and Albert Einstein. Photons are particles of light energy. One wavelength of light has that with that amount of energy. It is named after Max Planck, one of the founders of quantum theory, who discovered it in 1900. The equation is E = h x ƒ where E = __________, h = Planck’s constant (6.63 x 10-34 J ●s), and f = frequency. Calculating energy, wavelength and frequency Using Planck’s equation, E = h x ƒ What is the energy (Joules) of Violet light with a 14 -1 frequency = 7.50 x 10 s ? -11 Find the energy of light, wavelength is 4.06 x 10 m. Energy, wavelength and frequency practice Answer the following problems. Remember that h = 6.6 x 10-34 J● s. Energy = h x ƒ 14 What is the energy of a quantum of light with a frequency of 7.39 x 10 Hz? The energy for a quantum of light is 2.84 x 10 -19 J. What is the frequency of this light?